颞顶筋膜移植和聚二氧酮板修复鼻中隔穿孔。

IF 0.6 4区 工程技术 Q4 ENGINEERING, CHEMICAL
Journal of Chemical Engineering of Japan Pub Date : 2024-01-01 Epub Date: 2023-06-26 DOI:10.1177/00034894231183497
Monica K Rossi Meyer, Ali R Abtahi, Scott R Owen
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引用次数: 0

摘要

背景:室间隔穿孔的手术修复历来十分繁琐。据报道,最近采用聚二氧杂蒽酮(PDS)板包裹颞顶筋膜(TPF)移植的间位移植技术成功治愈了 90% 到 100% 的病例。我们的目的是扩大研究范围,将聚二氧杂蒽酮板结合颞顶筋膜移植用于鼻中隔穿孔修复:方法:对爱荷华大学2017年8月1日至2021年3月1日期间所有使用TPF-PDS钢板间位移植技术进行鼻中隔穿孔修复的病历进行回顾性审查。术后最少随访1个月:我们的系列研究包括31例有症状的鼻中隔穿孔患者。13名患者接受了开放手术,18名患者接受了鼻内移植手术。穿孔的平均大小为 1.49 平方厘米。术后平均随访 11.5 个月:结论:使用包裹在颞顶筋膜中的聚二氧杂蒽酮板间位移植修复症状性鼻中隔穿孔的总体成功率为 90%。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Temporoparietal Fascia Graft and Polydioxanone Plate Repair of Nasal Septal Perforation.

Background: Surgical repair of septal perforations has been historically cumbersome. Recently described techniques utilizing interposition grafting with polydioxanone (PDS) plates wrapped in a temporoparietal fascia (TPF) graft have reported successful closure in 90% to 100% of cases. Our objective is to expand the investigation into the use of interposition grafts of polydioxanone plates combined with a temporoparietal fascia graft for nasal septal perforation repair.

Methods: Retrospective review of the medical record was performed for all septal perforation repairs using the TPF-PDS plate interposition graft technique from August 1, 2017 to March 1, 2021 at the University of Iowa. Minimum post-operative follow-up was 1 month.

Results: Our series included 31 patients with symptomatic nasal septal perforations. Thirteen patients underwent open while 18 patients underwent endonasal graft placement. The mean perforation size was 1.49 cm2. The mean post-operative follow-up was 11.5 months.

Conclusions: Repair of symptomatic nasal septal perforations using an interposition graft of polydioxanone plate wrapped in temporoparietal fascia demonstrated an overall success rate of 90%.

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来源期刊
Journal of Chemical Engineering of Japan
Journal of Chemical Engineering of Japan 工程技术-工程:化工
CiteScore
1.70
自引率
12.50%
发文量
51
审稿时长
1.9 months
期刊介绍: The Journal of Chemical Engineering of Japan (JCEJ) is a monthly publication in English of the Society of Chemical Engineers, Japan. The first issue appeared in 1968. JCEJ publishes timely original research in the broad field of chemical engineering ranging from fundamental principles to practical applications. JCEJ is an international research journal and invites your contributions and subscriptions. All areas of chemical engineering are covered, including: Physical Properties and Physical Chemistry, Transport Phenomena and Fluid Engineering, Particle Engineering, Separation Engineering, Thermal Engineering, Chemical Reaction Engineering, Process Systems Engineering and Safety, Biochemical, Food and Medical Engineering, Micro and Nano Systems, Materials Engineering and Interfacial Phenomena, Energy, Environment, and Engineering Education.
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